首页> 外文会议>ASME 2nd Multifunctional Nanaocomposites and Nanomaterials and Nanomaterials Conference: Design and Modeling of Nanomaterials... >CHARACTERIZATION AND IN-VITRO ASSESSMENT OF NANO-HYDROXYAPATITE PREPARED BY POLYMERIC ROUTE
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CHARACTERIZATION AND IN-VITRO ASSESSMENT OF NANO-HYDROXYAPATITE PREPARED BY POLYMERIC ROUTE

机译:聚合物路线制备的纳米羟基磷灰石的表征与体外评价

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Hydroxyapatite is the most used calcium phosphate in implant production. In this study a novel method for the preparation of nano-hydroxyapatite is described. A mixture of calcium chloride and potassium hydrogen phosphate were introduced to the urea-formaldehyde resin during formation. The obtained resin was precalcined at 450℃ to get rid of the organic materials. The prepared powder was characterized using XRD, thermal analysis (DTA, TG), FT-IR, TEM and SEM supplemented with EDAX. In particular, the results of XRD show that the powder produced at 900℃ was wholly formed of nano-hydroxyapatite. TEM reveals that nano-hydroxyapatite particles have spherical shape and their size was less than 50 nm in width. SEM confirms the fine nature of the produced powder. The dielectric constant increases with increasing temperature and decreases with increasing frequencies. The dielectric loss shows a relaxation peak, which shifts to the higher frequency region with increasing temperature, conforming to a Debye-type relaxation process. In-vitro results show that fine grains of acicular hydroxyapatite were formed by immersing disc in simulated body fluid solution (SBF) proving the apatite formation onto the surface. Future work recommends incorporation of the prepared nano-sized hydroxyapatite into biocompatible polymer for tissue engineering applications.
机译:羟基磷灰石是植入物生产中最常用的磷酸钙。在这项研究中,描述了一种制备纳米羟基磷灰石的新方法。在形成过程中,将氯化钙和磷酸氢钾的混合物引入到脲醛树脂中。将获得的树脂在450℃下进行预煅烧,以除去有机物。使用XRD,热分析(DTA,TG),FT-IR,TEM和SEM补充EDAX对制备的粉末进行表征。特别地,XRD的结果表明,在900℃下生产的粉末完全由纳米羟基磷灰石形成。 TEM显示出纳米羟基磷灰石颗粒具有球形形状,并且其尺寸在宽度上小于50nm。 SEM证实了所生产粉末的优良性质。介电常数随温度升高而增加,而随频率升高而降低。介电损耗显示出弛豫峰,该峰随温度升高而移至更高的频率区域,这符合德拜型弛豫过程。体外结果表明,通过将圆盘浸入模拟体液(SBF)中形成针状羟基磷灰石细颗粒,从而证明磷灰石形成在表面上。未来的工作建议将制备的纳米羟基磷灰石掺入生物相容性聚合物中以用于组织工程应用。

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